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201por Rocha, Daniele, de Melo, Gisely Cardoso, Carneiro, José Marcelo Hipólito, Ribeiro, Marisa, Ribeiro, Sthefanie, de Godoy, Daniela Tupy, Costa, Elaine, de Almeida, Anne Cristine Gomes, de Andrade, Elisabete Ferreira, de Moura Abrahim, Cláudia Maria, Fraiji, Nelson Abrahim, Ferreira, Antonio Gomes Pinto, Monteiro, Wuelton Marcelo, Brindeiro, Rodrigo, Tanuri, Amilcar, de Lacerda, Marcus Vinicius Guimarães, Alvarez, PatríciaEnlace del recurso
Publicado 2020
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202“…OBJECTIVE: To investigate the function of NAT10 in mesenchymal stem cell (MSC) osteogenic differentiation and study the mechanism by which NAT10 affects MSC osteogenesis by mediating Gremlin 1 N4-acetylcytidine (ac(4)C) modification. …”
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203por Favarato, Graziella, Clemens, Tom, Cunningham, Steven, Dibben, Chris, Macfarlane, Alison, Milojevic, Ai, Taylor, Jonathon, Wijlaars, Linda Petronella Martina Maria, Wood, Rachael, Hardelid, Pia“…METHODS AND ANALYSIS: The aim of the PICNIC study (Air Pollution, housing and respiratory tract Infections in Children: NatIonal birth Cohort Study) is to quantify the extent to which in-utero, infant and childhood exposures to ambient air pollution and adverse housing conditions are associated with risk of RTI admissions in children <5 years old. …”
Publicado 2021
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204por Hedgespeth, Barry A., Birkenheuer, Adam J., Friedenberg, Steven G., Olby, Natasha J., Meurs, Kathryn M.“…Whole genome sequencing discovered a deleterious missense A/C mutation within the NAT10 gene, a gene essential for microtubule acetylation, appropriate ciliary development, and cytokinesis. …”
Publicado 2021
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205por Schneider, Thomas M., Eadon, Michael T., Cooper-DeHoff, Rhonda M., Cavanaugh, Kerri L., Nguyen, Khoa A., Arwood, Meghan J., Tillman, Emma M., Pratt, Victoria M., Dexter, Paul R., McCoy, Allison B., Orlando, Lori A., Scott, Stuart A., Nadkarni, Girish N., Horowitz, Carol R., Kannry, Joseph L.“…A novel CDS was sought for the APOL1, NAT2, and YEATS4 genes to guide optimal selection of antihypertensive medications among the African American population cared for at multiple participating institutions in a clinical trial. (2) Methods: The CDS committee, made up of clinical content and CDS experts, developed a framework and contributed to the creation of the CDS using the following guiding principles: 1. medical algorithm consensus; 2. actionability; 3. context-sensitive triggers; 4. workflow integration; 5. feasibility; 6. interpretability; 7. portability; and 8. discrete reporting of lab results. (3) Results: Utilizing the principle of discrete patient laboratory and vital information, a novel CDS for APOL1, NAT2, and YEATS4 was created for use in a multi-institutional trial based on a medical algorithm consensus. …”
Publicado 2021
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206por Xiang, Yuting, Zhou, Chuanchuan, Zeng, Yanyan, Guo, Qi, Huang, Jiana, Wu, Taibao, Liu, Jiawen, Liang, Qiqi, Zeng, Haitao, Liang, Xiaoyan“…In this study, we have documented decreasing trends of both ac4C and NAT10 expression from immature to mature mouse oocytes. …”
Publicado 2021
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207por Lin, Jiayu, Xiang, Yuting, Huang, Jiana, Zeng, Haitao, Zeng, Yanyan, Liu, Jiawen, Wu, Taibao, Liang, Qiqi, Liang, Xiaoyan, Li, Jingjie, Zhou, Chuanchuan“…It was confirmed in our previous study that oocyte maturation was impaired after N-acetyltransferase 10 (NAT10) knockdown (KD). In the present study, we further explored the transcriptome alteration of NAT10-depleted oocytes and found that O-GlcNAcase(OGA) was an important target gene for NAT10-mediated ac4C modification in oocyte maturation. …”
Publicado 2022
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208por Wei, Rongfang, Cui, Xing, Min, Jie, Lin, Zigen, Zhou, Yanyan, Guo, Mengjie, An, Xiaojuan, Liu, Hao, Janz, Siegfried, Gu, Chunyan, Wang, Hongbo, Yang, Ye“…Further enforced NAT10 expression promoted MM growth in vitro and in vivo, while knockdown of NAT10 reversed those effects. …”
Publicado 2022
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209por Liu, Hai-Qing, Pu, Zuo-Xian, Di, Dong-Wei, Zou, Ya-Jie, Guo, Yu-Man, Wang, Jun-Li, Zhang, Li, Tian, Peng, Fei, Qiong-Hui, Li, Xiao-Feng, Khaskheli, Allah Jurio, Wu, Lei, Guo, Guang-Qin“…Here, we show that loss of function of CKRC3/TCU2, the auxiliary subunit (Naa25) of Arabidopsis NatB, and/or of its catalytic subunit (Naa20), NBC, led to auxin-deficiency in plants. …”
Publicado 2022
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211por Tarrio, D, Tassan-Got, L, Audouin, L, Berthier, B, Duran, I, Ferrant, L, Isaev, S, Le Naour, C, Paradela, C, Stephan, C, Trubert, D, Abbondanno, U, Aerts, G, Alvarez-Velarde, F, Andriamonje, S, Andrzejewski, J, Assimakopoulos, P, Badurek, G, Baumann, P, Becvar, F, Belloni, F, Berthoumieux, E, Calvino, F, Calviani, M, Cano-Ott, D, Capote, R, Carrapico, C, Carrillo de Albornoz, A, Cennini, P, Chepel, V, Chiaveri, E, Colonna, N, Cortes, G, Couture, A, Cox, J, Dahlfors, M, David, S, Dillmann, I, Dolfini, R, Domingo-Pardo, C, Dridi, W, Eleftheriadis, C, Embid-Segura, M, Ferrari, A, Ferreira-Marques, R, Fitzpatrick, L, Frais-Koelbl, H, Fujii, K, Furman, W, Goncalves, I, Gonzalez-Romero, E, Goverdovski, A, Gramegna, F, Griesmayer, E, Guerrero, C, Gunsing, F, Haas, B, Haight, R, Heil, M, Herrera-Martinez, A, Igashira, M, Jericha, E, Kadi, Y, Kappeler, F, Karadimos, D, Karamanis, D, Kerveno, M, Ketlerov, V, Koehler, P, Konovalov, V, Kossionides, E, Krticka, M, Lampoudis, C, Leeb, H, Lederer, C, Lindote, A, Lopes, I, Losito, R, Lozano, M, Lukic, S, Marganiec, J, Marques, L, Marrone, S, Martinez, T, Massimi, C, Mastinu, P, Mendoza, E, Mengoni, A, Milazzo, P.M, Moreau, C, Mosconi, M, Neves, F, Oberhummer, H, O'Brien, S, Oshima, M, Pancin, J, Papachristodoulou, C, Papadopoulos, C, Patronis, N, Pavlik, A, Pavlopoulos, P, Perrot, L, Pigni, M.T, Plag, R, Plompen, A, Plukis, A, Poch, A, Praena, J, Pretel, C, Quesada, J, Rauscher, T, Reifarth, R, Rosetti, M, Rubbia, C, Rudolf, G, Rullhusen, P, Salgado, J, Santos, C, Sarchiapone, L, Sarmento, R, Savvidis, I, Tagliente, G, Tain, J.L, Tavora, L, Terlizzi, R, Vannini, G, Vaz, P, Ventura, A, Villamarin, D, Vlachoudis, V, Vlastou, R, Voss, F, Walter, S, Wendler, H, Wiescher, M, Wisshak, K“…Neutron-induced fission cross sections for (nat)Pb and (209)Bi were measured with a white-spectrum neutron source at the CERN Neutron Time-of-Flight (n\_TOF) facility. …”
Publicado 2011
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212por Sauvestre, J E, Charvet, J L, Dayras, R, Volant, C, Berthier, B, Legrain, R, Lucas, R, Pollacco, E C, De Filippo, E, Lanzanò, G, Pagano, A, Beck, C, Djerroud, BEnlace del recurso
Publicado 1994
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213
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214por Grzywacz, R, Pougheon, F, Rykaczewski, K, Saint-Laurent, M G, Schmidt-Ott, W D, Tarasov, O, Zylicz, J, Wauters, J, Szerypo, J, Sorlin, O, Lukyanov, S, Orr, N, Ostrowski, A N, Penionzhkevich, Y, Piechaczek, A, Janas, Z, Keller, H, Lewitowicz, M, Grawe, H, Guillemaud-Müller, D, Huyse, M, Anne, R, Auger, G, Borcea, C, Corre, J M, Dörfler, T, Formichov, A, Grévy, SEnlace del recurso
Publicado 1997
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215
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216por Liu, Rucong, Wubulikasimu, Zibaguli, Cai, Runze, Meng, Fanyi, Cui, Qinghua, Zhou, Yuan, Li, Yang“…NAT10-catalyzed N(4)-acetylcytidine (ac(4)C) has emerged as a vital post-transcriptional modulator on the coding transcriptome by promoting mRNA stability. …”
Publicado 2023
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217por Wakefield, Larissa, Cornish, Valerie, Long, Hilary, Kawamura, Akane, Zhang, Xiaoyan, Hein, David W., Sim, Edith“…Human NAT1 (and the murine equivalent mouse Nat2) is found early in embryonic development and is likely to have an endogenous role. …”
Publicado 2008
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218por Ruiz, Jhon D., Martínez, Carmen, Anderson, Kristin, Gross, Myron, Lang, Nicholas P., García-Martín, Elena, Agúndez, José A. G.“…These five phenotype categories, from higher to lower acetylation capacity, correspond to the genotypes NAT2*4/*4, NAT2*4/*5 or *4/*6, NAT2*5/*5, NAT2*5/*6 and NAT2*6/*6 (p≤0.001 for all comparisons). …”
Publicado 2012
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219
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220por Chaurasia, Rahul, Rout, Diptiranjan, Zaman, Shamsuz, Chatterjee, Kabita, Pandey, Hem Chandra, Maurya, Abhishek Kumar“…Introduction of nucleic acid testing (NAT) has helped in decreasing window period donations, resulting in increased safety of blood supplies. …”
Publicado 2016
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